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CONTENTS

Dispersion stabilization of silver nanoparticles in synthetic lung fluid studied under in situ conditions

, &
Pages 140-156 | Received 23 Feb 2010, Accepted 26 May 2010, Published online: 23 Aug 2010

References

  • Ahamed M, Karns M, Goodson M, Rowe J, Hussain SM, Schlager JJ, Hong YL. 2008. DNA damage response to different surface chemistry of silver nanoparticles in mammalian cells. Toxicol Appl Pharmacol 233:404–410.
  • Allen AJ, Hackley VA, Jemian PR, Ilavsky J, Raitano JM, Chan SW. 2008. In situ ultra-small-angle X-ray scattering study of the solution-mediated formation and growth of nanocrystalline ceria. J Appl Crystallography 41:918–929.
  • Aslan K, Lakowicz JR, Geddes CD. 2005. Plasmon light scattering in biology and medicine: New sensing approaches, visions and perspectives. Curr Opin Chem Biol 9:538–544.
  • Aslan K, Zhang J, Lakowicz JR, Geddes CD. 2004. Saccharide sensing using gold and silver nanoparticles – a review. J Fluorescence 14:391–400.
  • Astm International. 2009. Inter-laboratory study to establish precision statements for ASTM E2490-09 standard guide for measurement of particle size distribution of nanomaterials in suspension by photon correlation spectroscopy. Research Report E56-1001.
  • Banerjee IA, Yu LT, MacCuspie RI, Matsui H. 2004. Thiolated peptide nanotube assembly as arrays on patterned Au substrates. Nano Lett 4:2437–2440.
  • Carey Lea M. 1889. On allotropic forms of silver. Am J Sci 37:476–491.
  • Cedervall T, Lynch I, Lindman S, Berggard T, Thulin E, Nilsson H, Dawson KA, Linse S. 2007. Understanding the nanoparticle-protein corona using methods to quantify exchange rates and affinities of proteins for nanoparticles. Proc Natl Acad Sci USA 104:2050–2055.
  • Chan DYC, Linse P, Petris SN. 2001. Phase separation in deionized colloidal systems: extended Debye-Hückel theory. Langmuir 17:4202–4210.
  • Cookson DJ, Kirby N, Knott R, Lee M, Schultz D. 2006. Advanced photon source. Strategies for data collection and calibration on the small angle X-ray scattering camera at ChemMatCARS. J Synchrotron Rad 13:440–444.
  • Duan J, Park K, MacCuspie RI, Vaia RA, Pachter R. 2009. Optical properties of rod-like metallic nanostructures: Insight from theory and experiment. J Phys Chem C 113:15524–15532.
  • Elghanian R, Storhoff JJ, Mucic RC, Letsinger RL, Mirkin CA. 1997. Selective colorimetric detection of polynucleotides based on the distance-dependent optical properties of gold nanoparticles. Science 277:1078–1081.
  • Erdely A, Hulderman T, Salmen R, Liston A, Zeidler-Erdely PC, Schwegler-Berry D, Castranova V, Koyama S, Kim YA, Endo M, 2009. Cross-talk between lung and systemic circulation during carbon nanotube respiratory exposure. Potential biomarkers. Nano Lett 9:36–43.
  • Frederix F, Friedt JM, Choi KH, Laureyn W, Campitelli A, Mondelaers D, Maes G, Borghs G. 2003. Biosensing based on light absorption of nanoscaled gold and silver particles. Analyt Chem 75:6894–6900.
  • Gao XY, Yu LT, MacCuspie RI, Matsui H. 2005. Controlled growth of Se nanoparticles on Ag nanoparticles in different ratios. Adv Mater 17:426–429.
  • Gardner GE, Jones MG. 2009. Bacteria buster: Testing antibiotic properties of silver nanoparticles. Am Biol Teach 71:231–234.
  • Gun'ko VM, Klyueva AV, Levchuk YN, Leboda R. 2003. Photon correlation spectroscopy investigations of proteins. Adv Colloid Interface Sci 105:201–328.
  • Henig RM. 2007. Our silver-coated future. OnEarth 22–29.
  • Herzog E, Byrne HJ, Casey A, Davoren M, Lenz AG, Maier KL, Duschl A, Oostingh GJ. 2009a. SWCNT suppress inflammatory mediator responses in human lung epithelium in vitro. Toxicol Appl Pharmacol 234:378–390.
  • Herzog E, Byrne HJ, Davoren M, Casey A, Duschl A, Oostingh GJ. 2009b. Dispersion medium modulates oxidative stress response of human lung epithelial cells upon exposure to carbon nanomaterial samples. Toxicol Appl Pharmacol 236:276–281.
  • Hussain SM, Schlager JJ. 2009. Safety evaluation of silver nanoparticles: Inhalation model for chronic exposure. Toxicolog Sci 108:223–224.
  • Ilavsky J, Jemian PR. 2009. Irena: Tool suite for modeling and analysis of small-angle scattering. J App Cryst 42:347–353.
  • Jillavenkatesa A, Dapkunas SJ, Lum L-SH. 2001. Particle size characterization – NIST recommended practice guide. Special Publication 960-1.
  • Kelly KL, Coronado E, Zhao LL, Schatz GC. 2002. The optical properties of metal nanoparticles: The influence of size, shape, and dielectric environment. J Phys Chem B 107:668–677.
  • Kennedy A, Hackley VA, MacCuspie RI. 2009. NIST-ERDC NanoAg Workshop.
  • Kim KJ, Sung WS, Suh BK, Moon SK, Choi JS, Kim J, Lee DG. 2009. Antifungal activity and mode of action of silver nano-particles on Candida albicans. Biometals 22:235–242.
  • Koh AL, Shachaf CM, Elchuri S, Nolan GP, Sinclair R. 2008. Electron microscopy localization and characterization of functionalized composite organic-inorganic SERS nanoparticles on leukemia cells. Ultramicroscopy 109:111–121.
  • Kozak M. 2005. Glucose isomerase from Streptomyces rubiginosus – potential molecular weight standard for small-angle X-ray scattering. J Appl Crystallogr 38:555–558.
  • Kragh-Hansen U. 1981. Molecular aspects of ligand binding to serum albumin. Pharmacolog Rev 33:17–53.
  • Kramer RM, Li C, Carter DC, Stone MO, Naik RR. 2004. Engineered protein cages for nanomaterial synthesis. J Am Chem Soc 126:13282–13286.
  • Kvitek L, Vanickova M, Panacek A, Soukupova J, Dittrich M, Valentova E, Prucek R, Bancirova M, Milde D, Zboril R. 2009. Initial study on the toxicity of silver nanoparticles (NPs) against Paramecium caudatum. J Phys Chem C 113:4296–4300.
  • Link S, El-Sayed MA. 1999. Spectral properties and relaxation dynamics of surface plasmon electronic oscillations in gold and silver nanodots and nanorods. J Phys Chem B 103:8410–8426.
  • Lundqvist M, Stigler J, Elia G, Lynch I, Cedervall T, Dawson KA. 2008. Nanoparticle size and surface properties determine the protein corona with possible implications for biological impacts. Proc Natl Acad Sci USA 105:14265–14270.
  • Luoma SN. 2008. Silver nanotechnologies and the environment: Old problems or new challenges? PEN 15. The Project on Emerging Nanotechnologies.
  • Lynch I, Cedervall T, Lundqvist M, Cabaleiro-Lago C, Linse S, Dawson KA. 2007. The nanoparticle-protein complex as a biological entity; a complex fluids and surface science challenge for the 21st century. Adv Colloid Interface Sci 134–135:167–174.
  • MacCuspie RI, Banerjee IA, Pejoux C, Gummalla S, Mostowski HS, Krause PR, Matsui H. 2008a. Virus assay using antibody-functionalized peptide nanotubes. Soft Matter 4:833–839.
  • MacCuspie RI, Elsen AM, Diamanti SJ, Patton ST, Altfeder I, Jacobs JD, Voevodin AA, Vaia RA. 2010a. Purification-chemical structure-electrical property relationship in gold nanoparticle liquids. Appl Organometallic Chem 24:590–599.
  • MacCuspie RI. 2010b. Colloidal stability of silver nanoparticles with various surface coatings in biologically relevant conditions. Journal of Nanoparticle Research (submitted).
  • MacCuspie RI, Nuraje N, Lee SY, Runge A, Matsui H. 2008b. Comparison of electrical properties of viruses studied by AC capacitance scanning probe microscopy. J Am Chem Soc 130:887–891.
  • Malinsky MD, Kelly KL, Schatz GC, Van Duyne RP. 2001. Chain length dependence and sensing capabilities of the localized surface plasmon resonance of silver nanoparticles chemically modified with alkanethiol self-assembled monolayers. J Am Chem Soc 123:1471–1482.
  • Matsui H, MacCuspie R. 2001. Metalloporphyrin nanotube fabrication using peptide nanotubes as templates. Nano Lett 1:671–675.
  • Maynard A. 2009. Project on emerging nanotechnologies. Woodrow Wilson International Center for Scholars.
  • Muniz G, Banerjee IA, Yu LT, Djalali R, Matsui H. 2005. Controlled nanocrystal growth on sequence peptide coated nanotubes to fabricate Au, Ag, and Ge nanowires. Abstracts of Papers Am Chem Soc 229:U1154–1154.
  • Naik RR, Stringer SJ, Agarwal G, Jones SE, Stone MO. 2002. Biomimetic synthesis and patterning of silver nanoparticles. Nature Mater 1:169–172.
  • Nam KT, Lee YJ, Krauland EM, Kottmann ST, Belcher AM. 2008. Peptide-mediated reduction of silver ions on engineered biological scaffolds. ACS Nano 2:1480–1486.
  • National Institute of Standards and Technology (NIST). 2008a. Measuring the size of nanoparticles in aqueous media using batch-mode dynamic light scattering. NIST-NCL Joint Assay Protocol. National Cancer Instititute, Nanotechnology Characterization Laboratory.
  • National Institute of Standards and Technology (NIST). 2008b. Reference Material 8011, Gold nanoparticles, nominal 10 nm diameter. Gaithersburg, MD: NIST.
  • National Institute of Standards and Technology (NIST). 2008c. Reference Material 8012, Gold nanoparticles, nominal 30 nm diameter. Gaithersburg, MD: NIST.
  • National Institute of Standards and Technology (NIST). 2008d. Reference Material 8013, Gold nanoparticles, nominal 60 nm diameter. Gaithersburg, MD: NIST.
  • Nuraje N, Banerjee IA, MacCuspie RI, Yu LT, Matsui H. 2004. Biological bottom-up assembly of antibody nanotubes on patterned antigen arrays. J Am Chem Soc 126:8088–8089.
  • Nuraje N, Su K, Samson J, Haboosheh A, MacCuspie RI, Matsui H. 2006. Self-assembly of Au nanoparticle-containing peptide nano-rings on surfaces. Supramolec Chem 18:429–434.
  • Perelaer J, Hendriks CE, de Laat AWM, Schubert US. 2009. One-step inkjet printing of conductive silver tracks on polymer substrates. Nanotechnology 20:165303.
  • Porter D, Sriram K, Wolfarth M, Jefferson A, Schwegler-Berry D, Andrew M, Castranova V. 2008. A biocompatible medium for nanoparticle dispersion. Nanotoxicology 2:144–154.
  • Potton JA, Daniell GJ, Rainford BD. 1988. Particle size distributions from SANS data using the maximum-entropy method. J App Cryst 21:663–668.
  • Raffi M, Hussain F, Bhatti TM, Akhter JI, Hameed A, Hasan MM. 2008. Antibacterial characterization of silver nanoparticles against E. coli ATCC-15224. J Mater Sci Technol 24:192–196.
  • Rahman MF, Wang J, Patterson TA, Saini UT, Robinson BL, Newport GD, Murdock RC, Schlager JJ, Hussain SM, Ali SF. 2009. Expression of genes related to oxidative stress in the mouse brain after exposure to silver-25 nanoparticles. Toxicol Lett 187:15–21.
  • Sager TM, Castranova V. 2009. Surface area of particle administered versus mass in determining the pulmonary toxicity of ultrafine and fine carbon black: Comparison to ultrafine titanium dioxide. Particle Fibre Toxicol 6:15.
  • Sager TM, Kommineni C, Castranova V. 2008. Pulmonary response to intratracheal instillation of ultrafine versus fine titanium dioxide: Role of particle surface area. Particle Fibre Toxicol 5:17.
  • Sager TM, Porter DW, Robinson VA, Lindsley WG, Schwegler-Berry DE, Castranova V. 2007. Improved method to disperse nanoparticles for in vitro and in vivo investigation of toxicity. Nanotoxicology 1:118–129.
  • Shvedova AA, Kisin ER, Porter D, Schulte P, Kagan VE, Fadeel B, Castranova V. 2009. Mechanisms of pulmonary toxicity and medical applications of carbon nanotubes: Two faces of Janus? Pharmacol Therapeut 121:192–204.
  • Skebo JE, Grabinski CM, Schrand AM, Schlager JJ, Hussain SM. 2007. Assessment of metal nanoparticle agglomeration, uptake, and interaction using high-illuminating system. Int J Toxicol 26:135–141.
  • Ted C, Smith KA, Hatton TA. 2004. Photocontrol of protein folding: The interaction of photosensitive surfactants with bovine serum albumin. Biochemistry 44:524–536.
  • Tien DC, Tseng KH, Liao CY, Huang JC, Tsung TT. 2008. Discovery of ionic silver in silver nanoparticle suspension fabricated by arc discharge method. J Alloys Compounds 463:408–411.
  • Tomczak MM, Slocik JM, Stone MD, Naik RR. 2007. Bio-based approaches to inorganic material synthesis. Biochem Soc Transact 35:512–515.
  • Tomczak MM, Slocik JM, Stone MO, Naik RR. 2008. Biofunctionalized nanoparticles and their uses. MRS Bull 33:519–523.
  • Tsai D-H, DelRio FW, MacCuspie RI, Cho TJ, Zachariah M, Hackley VA. 2010. Competitive adsorption of thiolated polyethylene glycol and mercaptopropionic acid on gold nanoparticles measured by physical characterization methods. Langmuir 26:10325–10333.
  • Turkevich J, Stevenson PC, Hillier J. 1951. A Study of the nucleation and growth processes in the synthesis of colloidal gold. Discuss Faraday Soc 55.
  • Verwey EJW, Overbeek JThG. 1948. Theory of the stability of lyophobic colloids. Amsterdam: Elsevier.
  • Voevodin AA, Vaia RA, Patton ST, Diamanti S, Pender M, Yoonessi M, Brubaker J, Hu JJ, Sanders JH, Phillips BS, 2007. Nanoparticle-wetted surfaces for relays and energy transmission contacts. Small 3:1957–1963.
  • Wiesner MR, Lowry GV, Jones KL, Hochella J, Di Giulio RT, Casman E, Bernhardt ES. 2009. Decreasing uncertainties in assessing environmental exposure, risk, and ecological implications of nanomaterials. Environ Sci Technol 43:6458–6462.
  • Wijnhoven SWP, Peijnenburg WJGM, Herberts CA, Hagens WI, Oomen AG, Heugens EHW, Roszek B, Bisschops J, Gosens I, Van De Meent D, 2009. Nano-silver – a review of available data and knowledge gaps in human and environmental risk assessment. Nanotoxicology 3:109–138.
  • Yeo MK, Yoon JW. 2009. Comparison of the effects of nano-silver antibacterial coatings and silver ions on zebrafish embryogenesis. Molec Cellular Toxicol 5:23–31.
  • Yu LT, Banerjee IA, Matsui H. 2003. Direct growth of shape-controlled nanocrystals on nanotubes via biological recognition. J Am Chem Soc 125:14837–14840.

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